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Effect of thermal treatment on the charge storage properties of graphene oxide/12-tungstophosphoric acid nanocomposite

机译:热处理对石墨烯/ 12-钨磷纳米复合材料电荷储存性能的影响

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摘要

The influence of thermal treatment in an inert atmosphere on the charge storage properties of graphene oxide (GO)/12-tungstophosphoric acid (WPA) nanocomposite was examined. The transmission electron microscopy analysis revealed high dispersion of WPA on GO matrix, while the surface analysis showed thermal activation of structural changes of WPA and desorption of oxygen functional groups from GO and GO/WPA nanocomposite. Initial GO/WPA nanocomposite had approximately two times higher capacitance compared to initial GO. The thermal treatment of initial GO and GO/WPA to 500 degrees C induced twofold increase of capacitance of GO and 40% increase of GO/WPA, accompanied with significant increase of operating voltage compared to GO (for 300 mV). Above 500 degrees C, a decrease of capacitance of both GO and GO/WPA was observed. The results suggest that understanding of structural changes of components and their interaction is crucial for improvement of electrochemical properties of considered composite.
机译:检查了热处理在惰性气氛中对石墨烯(GO)/ 12-钨磷酸(WPA)纳米复合材料的电荷储存性能的影响。透射电子显微镜分析显示WPA在去基质上的高分散,而表面分析显示WPA的WPA结构变化的热激活和来自GO和GO / WPA纳米复合材料的氧官能团的解吸。与初始GO相比,初始GO / WPA纳米复合材料具有大约两倍的电容。初始GO和GO / WPA的热处理和500摄氏度诱导转移电容的两倍和GO / WPA增加40%,与GO(适量300 mV)相比,工作电压显着增加。高于500摄氏度,观察到GO和GO / WPA的电容降低。结果表明,对组分结构变化及其相互作用的理解对于改善考虑复合材料的电化学性质至关重要。

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